用于飞行平台的小型雷达系统

D. Tarchi, G. Guglieri, M. Vespe, C. Gioia, Francesco Sermi, V. Kyovtorov
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引用次数: 8

摘要

海洋领域的监视活动影响着海洋领域的安全、安全、经济或环境,因此引起了人们极大的兴趣。这些活动既需要确定感兴趣的领域,也需要部署适当的资产。要部署的资产类型取决于不同的方面,例如它们的耐用性、覆盖范围和成本。联合研究中心与都灵理工大学航空和空间工程系一起,在一架浮空器和一架无人驾驶飞机上开发了两套互补的低成本雷达系统。调频连续波(FMCW)雷达已被确定为技术解决方案,而集成IMU/GPS平台已被用作导航引擎。单元之间的同步是基本的,因此研究了各种解决方案。所选择的方法利用雷达和导航数据集之间的时间参考匹配。为了评估装配系统的性能,在操作前条件下进行了几次测试,雷达在固定仰角下进行了几次方位扫描。从结果来看,没有观察到姿态参数的漂移和偏差。此外,所采用的集成策略允许重建极区雷达图像,利用雷达和导航单元之间的协同作用。得到的雷达图像在扫描到扫描之间是一致的,正确地描述了实际场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mini-radar system for flying platforms
Surveillance of maritime areas attracts huge interest, because of the different activities that impact the security, safety, economy, or environment in sea domain. These activities require both the identification of areas of interest and the deployment of suitable assets. The types of assets to be deployed depend on different aspects such as their endurance, coverage and cost. The Joint Research Centre (JRC) together with the Department of Aeronautic and Space Engineering at the Politecnico di Torino, have developed two complementary low-cost radar systems on board of an aerostat and of a drone. A Frequency Modulated Continuous Wave (FMCW) radar has been identified as the technical solution, whereas an integrated IMU/GPS platform has been used as navigation engine. The synchronization between units is fundamental, therefore various solutions have been investigated. The selected approach exploits the time-referenced matching between radar and navigation datasets. To evaluate the performance of the assembled system, several tests have been carried out in pre-operational conditions with the radar performing several azimuthal scans with fixed elevation angle. From the results, no drift nor bias in the attitude parameters have been observed. Moreover the adopted integration strategy allows reconstructing the polar radar picture, exploiting the synergy between the radar and the navigation units. The obtained radar pictures are consistent from scan to scan and correctly characterize the actual scenario.
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